High-precision data monitoring to ensure testing accuracy.
Pairing a high-precision ADC with a high-speed DAC can significantly enhance sampling accuracy and reduce noise interference.
FPGA + high-speed DAC ⇨ ultra-high-precision DDS;
4096-point ultra-fine representation of sine wave;
Frequency error as low as ±0.02Hz;
Dual-channel ADC + FPGA high-speed parallel processing unit, DFT + FIR calculation ⇨ ultra-high-precision impedance.
High-speed network communication not only improves data uploading speed and remote operation speed, but also seamlessly integrates with the new Weiwei battery testing system.
● Impedance Measurement
● Voltage Measurement
● Reactance Measurement
● Complex Impedance Measurement
● Impedance Phase Angle Measurement
Measures 5 types of data for comprehensive battery monitoring: internal resistance, voltage, reactance, complex impedance, and impedance phase angle.
2U-sized impedance meter chassis, convenient for integration into rack-mount cabinets, compatible with battery testing systems, capable of testing internal resistance performance in different SOC states and cycling conditions. When paired with the NEWARE OCV machine, it can measure open-circuit voltage and AC impedance of battery cells, facilitating rapid automated cell sorting.
Utilizing high-performance NXP processors to swiftly respond to various task requirements, enhancing device performance; Intel Cyclone IV FPGA, integrating 10320 LEs, 414Kbits of memory, and 23 18x18 hardware multipliers, enabling highly efficient DFT and FIR digital filtering computations.
● Voltage & Current Accuracy:±0.05% F.S.
● Recording Frequency:10Hz
● Sampling Time:100ms
● Current Response Time:≤1ms
● Energy Efficiency:>65%
● Off-Line Test: 1GB
● Voltage & Current Accuracy:±0.05% F.S.
● Recording Frequency:10Hz
● Sampling Time:100ms
● Current Response Time:≤1ms
● Energy Efficiency:>65%
● Off-Line Test: 1GB
● Voltage & Current Accuracy:±0.01% F.S.
● Recording Frequency:10Hz
● Sampling Time:100ms
● Current Response Time:≤1ms
● Minimum Pulse Width:500ms
● Off-Line Test: 1GB
● Voltage&Current Accuracy:±0.01% F.S.
● Recording Frequency:100Hz
● Current Response Time:≤1ms
● Minimum Pulse Width:500ms
● Off-Line Test:1GB/CH
● Cycle Life, GITT Test, DCIR Test, dQ/dV Curve
● Voltage & Current Accuracy:±0.05% F.S.
● Recording Frequency:100Hz
● Temperature Fluctuation:≤1.8℉(1℃)
● Temperature Range & Deviation:-40℉ ~ 302℉±3.6℉(-40℃ ~ 150℃±2.0℃)
● Heating Efficiency:68℉ ~ 302℉ ≤60min(20℃ ~ 150℃)
● Cooling Efficiency:68℉ ~ -40℉≤60min(20℃~-40℃)
● Voltage & Current Accuracy:±0.05% F.S.
● Recording Frequency:100Hz
● Number of Channels:80CH
● Temperature Range & Deviation:50℉ ~ 185℉±3.6℉(10℃ ~ 85℃±2.0℃)
● Heating Efficiency:77℉ ~ 185℉ ≤40min(25℃ ~ 85℃)
● Cooling Efficiency:77℉ ~ 50℉≤40min(25℃~10 ℃)
● Voltage & Current Accuracy:±0.05% F.S.
● Sampling Time:100ms
● Number of Channels:16CH
● Temperature Range & Deviation:32℉ ~ 140℉±3.6℉(15℃ ~ 60℃±2.0℃)
● Heating Efficiency:77℉ ~ 140℉≤50min(25℃ ~ 60℃)
● Cooling Efficiency:77℉ ~ 59℉≤60min(25℃~15 ℃)
● Voltage & Current Accuracy:±0.01% F.S.
● Recording Frequency:100Hz
● Number of Channels:160CH
● Temperature Range & Deviation:32℉ ~ 140℉±3.6℉(0℃ ~ 60℃±2.0℃)
● Heating Efficiency:77℉ ~ 140℉ ≤30min(25℃ ~ 60℃)
● Cooling Efficiency:77℉ ~ 32℉≤50min(25℃~0 ℃)